Seasonal changes in NRF2 antioxidant pathway regulates winter depression-like behavior

Author:

Nakayama TomoyaORCID,Okimura KousukeORCID,Shen JiachenORCID,Guh Ying-Jey,Tamai T. KatherineORCID,Shimada Akiko,Minou Souta,Okushi Yuki,Shimmura TsuyoshiORCID,Furukawa Yuko,Kadofusa Naoya,Sato AyatoORCID,Nishimura Toshiya,Tanaka Minoru,Nakayama KeiORCID,Shiina NobuyukiORCID,Yamamoto NaoyukiORCID,Loudon Andrew S.ORCID,Nishiwaki-Ohkawa TaekoORCID,Shinomiya AiORCID,Nabeshima Toshitaka,Nakane YusukeORCID,Yoshimura TakashiORCID

Abstract

Seasonal changes in the environment lead to depression-like behaviors in humans and animals. The underlying mechanisms, however, are unknown. We observed decreased sociability and increased anxiety-like behavior in medaka fish exposed to winter-like conditions. Whole brain metabolomic analysis revealed seasonal changes in 68 metabolites, including neurotransmitters and antioxidants associated with depression. Transcriptome analysis identified 3,306 differentially expressed transcripts, including inflammatory markers, melanopsins, and circadian clock genes. Further analyses revealed seasonal changes in multiple signaling pathways implicated in depression, including the nuclear factor erythroid-derived 2-like 2 (NRF2) antioxidant pathway. A broad-spectrum chemical screen revealed that celastrol (a traditional Chinese medicine) uniquely reversed winter behavior. NRF2 is a celastrol target expressed in the habenula (HB), known to play a critical role in the pathophysiology of depression. Another NRF2 chemical activator phenocopied these effects, and anNRF2mutant showed decreased sociability. Our study provides important insights into winter depression and offers potential therapeutic targets involving NRF2.

Funder

MEXT | Japan Society for the Promotion of Science

Human Frontier Science Program

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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